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A compartmental model of water radon contamination in the human body.

机译:水氡污染区划的模型在人类的身体。

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摘要

A multicompartmental model is developed to simulate the biokinetics in the human body following the ingestion of an inert gas. It was assumed that 100% of the radon ingested appears in the stomach, from which it is transported through the body to different organs via the blood stream. Each of these organs absorbs and releases radon differently, and, amongst all, the fat retains radon for the longest time. To test the model, the information on elimination rates of 222Rn in expired breath was obtained from other experiments done at the University of Maine. The data included male and female participants with a wide range of ages and physical activity levels. The radiation doses in the different organs and tissues were computed. As was expected, the stomach sustained the maximum dose. In this study, the highest stomach dose to any volunteer was evaluated as 115 mSv y(-1).
机译:multicompartmental模型模拟人体的生物运动学摄入后一种惰性气体。假设100%的氡摄取在胃里,它是运输通过身体不同器官通过血液中。释放氡是不同的,在所有的脂肪保持氡的时间最长。模型,消除率的信息222年过期rn呼吸是获得其他大学的实验缅因州。用广泛的年龄和参与者身体活动水平。计算不同的器官和组织。预计,胃持续最大剂量。剂量任何志愿者被评估为115毫西弗y(1)。

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